Implement Uint::to_be_bytes()
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@ -54,6 +54,7 @@ macro_rules! define_le_to_array {
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define_slice_to_be!(slice_to_u32_be, u32);
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define_slice_to_be!(slice_to_u32_be, u32);
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define_slice_to_be!(slice_to_u64_be, u64);
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define_slice_to_be!(slice_to_u64_be, u64);
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define_be_to_array!(u32_to_array_be, u32, 4);
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define_be_to_array!(u32_to_array_be, u32, 4);
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define_be_to_array!(u64_to_array_be, u64, 8);
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define_slice_to_le!(slice_to_u16_le, u16);
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define_slice_to_le!(slice_to_u16_le, u16);
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define_slice_to_le!(slice_to_u32_le, u32);
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define_slice_to_le!(slice_to_u32_le, u32);
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define_slice_to_le!(slice_to_u64_le, u64);
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define_slice_to_le!(slice_to_u64_le, u64);
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@ -102,6 +102,17 @@ macro_rules! construct_uint {
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$name(slice)
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$name(slice)
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}
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}
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/// Convert a big integer into a byte array using big-endian encoding
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pub fn to_be_bytes(&self) -> [u8; $n_words * 8] {
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use super::endian::u64_to_array_be;
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let mut res = [0; $n_words * 8];
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for i in 0..$n_words {
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let start = i * 8;
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res[start..start+8].copy_from_slice(&u64_to_array_be(self.0[$n_words - (i+1)]));
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}
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res
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}
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// divmod like operation, returns (quotient, remainder)
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// divmod like operation, returns (quotient, remainder)
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#[inline]
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#[inline]
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fn div_rem(self, other: Self) -> (Self, Self) {
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fn div_rem(self, other: Self) -> (Self, Self) {
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@ -505,6 +516,16 @@ mod tests {
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Uint256([0x11fed2bad1c0ffe0, 0xbaadf00ddefaceda, 0xdeafbabe2bedfeed, 0x1badcafedeadbeef]));
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Uint256([0x11fed2bad1c0ffe0, 0xbaadf00ddefaceda, 0xdeafbabe2bedfeed, 0x1badcafedeadbeef]));
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}
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}
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#[test]
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pub fn uint_to_be_bytes() {
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assert_eq!(Uint128([0xdeafbabe2bedfeed, 0x1badcafedeadbeef]).to_be_bytes(),
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[0x1b, 0xad, 0xca, 0xfe, 0xde, 0xad, 0xbe, 0xef, 0xde, 0xaf, 0xba, 0xbe, 0x2b, 0xed, 0xfe, 0xed]);
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assert_eq!(Uint256([0x11fed2bad1c0ffe0, 0xbaadf00ddefaceda, 0xdeafbabe2bedfeed, 0x1badcafedeadbeef]).to_be_bytes(),
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[0x1b, 0xad, 0xca, 0xfe, 0xde, 0xad, 0xbe, 0xef, 0xde, 0xaf, 0xba, 0xbe, 0x2b, 0xed, 0xfe, 0xed,
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0xba, 0xad, 0xf0, 0x0d, 0xde, 0xfa, 0xce, 0xda, 0x11, 0xfe, 0xd2, 0xba, 0xd1, 0xc0, 0xff, 0xe0]);
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}
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#[test]
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#[test]
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pub fn uint256_arithmetic_test() {
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pub fn uint256_arithmetic_test() {
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let init = Uint256::from_u64(0xDEADBEEFDEADBEEF).unwrap();
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let init = Uint256::from_u64(0xDEADBEEFDEADBEEF).unwrap();
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